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Original Articles

Particle Resuspension in Turbulent Flow: A Stochastic Model for Individual Soil Grains

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Pages 613-628 | Received 09 Jul 2007, Accepted 24 May 2008, Published online: 10 Jul 2008

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T. L. Barone, J. R. Patts, S. J. Janisko, J. F. Colinet, L. D. Patts, T. W. Beck & S. E. Mischler. (2016) Sampling and analysis method for measuring airborne coal dust mass in mixtures with limestone (rock) dust. Journal of Occupational and Environmental Hygiene 13:4, pages 284-292.
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Asmaa Sadek Kassab, VictorM. Ugaz, MariaD. King & YassinA. Hassan. (2013) High Resolution Study of Micrometer Particle Detachment on Different Surfaces. Aerosol Science and Technology 47:4, pages 351-360.
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AllisonR. Harris & CliffI. Davidson. (2009) A Monte Carlo Model for Soil Particle Resuspension Including Saltation and Turbulent Fluctuations. Aerosol Science and Technology 43:2, pages 161-173.
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Francisco J. Arias. (2016) Interfacial Tension-Driven Differentiation-(ITDD) may result in a low-density central region inside kilometer-sized bodies. Planetary and Space Science 122, pages 88-93.
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Christophe Henry & Jean-Pierre Minier. (2014) Progress in particle resuspension from rough surfaces by turbulent flows. Progress in Energy and Combustion Science 45, pages 1-53.
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Raheleh Givehchi, Mohammad Arhami & Massoud Tajrishy. (2013) Contribution of the Middle Eastern dust source areas to PM10 levels in urban receptors: Case study of Tehran, Iran. Atmospheric Environment 75, pages 287-295.
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Aron Jazcilevich, Ann Wellens, Christina Siebe, Irma Rosas, Robert D. Bornstein & Horacio Riojas-Rodríguez. (2012) Application of a stochastic vehicular wake erosion model to determine PM2.5 exposure. Aeolian Research 4, pages 31-37.
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